More principled seeding approach in the hash functions.
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src/hash.rs
16
src/hash.rs
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@ -1,35 +1,35 @@
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/// A fast seedable 32-bit hash function.
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///
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/// Based on <https://github.com/skeeto/hash-prospector>.
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pub fn hash_u32(mut n: u32, seed: u32) -> u32 {
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n ^= 0xe6fe3beb; // So zero doesn't map to zero.
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n ^= seed;
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// From https://github.com/skeeto/hash-prospector
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n ^= n >> 16;
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n = n.wrapping_mul(0x21f0aaad);
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n ^= seed;
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n ^= n >> 15;
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n = n.wrapping_mul(0xd35a2d97);
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n ^= n >> 15;
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n
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// We xor by `seed` again in case the first time cancelled out our
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// "zero doesn't map to zero" precaution.
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n ^ seed
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}
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/// A fast seedable 64-bit hash function.
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///
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/// Based on <https://zimbry.blogspot.com/2011/09/better-bit-mixing-improving-on.html>.
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pub fn hash_u64(mut n: u64, seed: u64) -> u64 {
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n ^= 0x4acc3f27cc712c9d; // So zero doesn't map to zero.
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n ^= seed;
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// From https://zimbry.blogspot.com/2011/09/better-bit-mixing-improving-on.html
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n ^= n >> 30;
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n = n.wrapping_mul(0xbf58476d1ce4e5b9);
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n ^= seed;
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n ^= n >> 27;
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n = n.wrapping_mul(0x94d049bb133111eb);
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n ^= n >> 31;
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n
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// We xor by `seed` again in case the first time cancelled out our
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// "zero doesn't map to zero" precaution.
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n ^ seed
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}
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/// Returns a random float in [0, 1] based on 'n' and a seed.
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